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IMPORTANT SAFETY INFORMATION: Always read this manual first before attempting to install or use this fireplace. For your safety, always comply with all warnings and safety instructions contained in this manual to prevent personal injury or property damage. To view the full line of Dimplex products, please visit www.dimplex.com 7209120100R05 Table of Contents Welcome & Congratulations. . . . . . . . . . . . . . . . . 3 Important Instructions. . . . . . . . . . . . . . . . 4 Quick Reference Guide. . . . . . . . . . . . . . . . . . . . . 7 Site Selection and Preparation . . . . . . . . . . . . . . . 7 Fireplace Installation . . . . . . . . . . . . . . . . . . . . . . . 8 Operation. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 11 Maintenance. . . . . . . . . . . . . . . . . . . . . . . . . . . . . 16 Warranty . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 18 Replacement Parts List . . . . . . . . . . . . . . . . . . . . 22 Always use a qualified technician or service agency to repair this fireplace.
INSTALLATION INSTRUCTIONS Location 1. The fireplace may be hanged on any wall surface that can support its weight and where it can be leveled. As it does not irradiate any heat from the back and no rear clearances are needed. 2. The heater, which is located at the base of the fireplace, must be a minimum of 16 inches away from any combustible material. 3. It is important that the wall on to which the fireplace is to be installed is of sound construction. It is recommended that the brackets are installed directly into beams for support. But not necessary depending on the size and weight of the unit. 4. Yosemite fireplaces are approved for indoor use only. 5. The fireplace must be kept away from any source of damp or moist conditions. Avoid any close contact with water. 6. This fireplace produces heat. Consequently it is important to ensure that a suitable wall covering is selected behind and around the appliance. Typical wood frame drywall construction is suitable. 2|P a g e Installation Figure 1 1. Select the position of the fireplace on the wall to which it is to be mounted. Draw a level horizontal line on the wall at the required height. This line will correspond to the top of the fireplace so it is important to allow for the extra height of the glass face. 2. Mark the center line of the fireplace on to the horizontal line. 3. Place the Installation Plate along the horizontal line and line up the center “V” cut out with the center line. See Figure 1. 4. DRYWALL INSTALLATION Install screws into studs at 4 outside corner screw holes. If studs are not present, install self drilling hollow wall anchors at the 4 outside corners and find wood studs with at least 4 more screws on the mounting plate (two high and two low). Holes are offset to allow finding wood studs at normal spacing. Attach more screws into larger models as needed.
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Bi-Fuel CNG Sierra 2500HD Crew Cab Built for you. Propelled by innovation. When it comes to managing budgets and keeping an eye on the environment, business owners and fleet managers alike face many challenges. That’s where GM’s Bi-Fuel Sierra 2500HD Crew Cab comes in. It’s designed to help businesses reduce their fuel costs and environmental impact. ENGINEERED BY GM The Bi-Fuel Sierra 2500HD Crew Cab uses a proven, 6.0L Vortec V-8 engine with factory-installed hardened intake and exhaust valves and valve seats. Unlike aftermarket solutions, the engine and all CNG fuel system components are engineered to meet GM’s rigorous standards for reliability, dependability and safety. GM’s validation tests include: full barrier testing (six separate tests), 10-year corrosion, mud trough, water fording, hot-weather evaluation (including trailering), cold-weather chamber testing, altitude testing and fuel gauge accuracy, among others. • The system automatically and seamlessly switches from CNG to gasoline when the CNG tank has been depleted. It also provides the flexibility to manually switch between the two fuels at any time.
DuPont™ Vespel® CR-6100 APPLICATION AND INSTALLATION GUIDE FOR CENTRIFUGAL PUMP STATIONARY WEAR PARTS Fluid processing industries have embraced the use of composite materials in pumps to reduce vibration, increase mechanical seal life and MTBR (mean time between repair), reduce the risk of seizure, increase efficiency, and reduce repair costs. API 610, 10th Edition (ISO standard 13709), the latest centrifugal pump standard from the American Petroleum Institute (API), recognizes the use of composites to achieve these benefits. The function of wear rings Wear rings are installed with close radial clearances and separate rotating and stationary, higher and lower-pressure sections of a pump. When shaft deflection occurs due to off-design operation, Background wear rings can experience contact. Historically, wear rings have The CR-6100 grade of DuPont Vespel parts and shapes is a been made from metal, which can gall and seize the pump composite material consisting of carbon fibers held in a Teflon® under contacting or run-dry conditions, resulting in abrupt, high- fluorocarbon resin matrix (PFA/CF Reinforced Composite, energy pump failure. With metal wear rings, design clearance 20 wt% random x-y oriented carbon-fiber). Vespel® CR-6100 has is increased to prevent failure, which has a negative effect on been installed in thousands of pumps in refineries, chemical efficiency, suction conditions, and overall pump vibration. Vespel® plants, power plants, and other fluid processing facilities since CR-6100 can be installed with reduced clearances, without 1996. It has replaced metal and other composite materials used increasing the risk of seizure while improving pump performance.
Pumps Factsheet D AY I N. D AY O U T.™ 2- to 15-HP Straight Centrifugal Pumps Continuous-duty pumps have a close-coupled design and enclosed impeller, for dependable, highvolume service. 4-position discharge ports rotate in 90° increments, with vent and easy-access drain plugs for all positions. Type 21 mechanical seal and O-ring casing seal. Replaceable case wear ring prevents casing wear. Max. case inlet pressure: 100 psi. 4ZA35 2 HP straight centrifugal pump constructed of cast iron with a bronze impeller. Dayton products are available at Grainger. There are many ways to get the Dayton products you need — phone, fax, online at grainger.com/dayton or stop by your local Grainger® branch. A Tradition of Performance, Reliability and Value. 2- to 15-HP Straight Centrifugal Pumps Uses: For liquid and chemical transfer, heating and cooling, recirculation, booster service, and other industrial and agricultural applications. • 3450 RPM motor with TEFC enclosure • Cast Iron and Naval Bronze pumps have Buna • Single-phase motors have stainless steel shafts NOTE: Pumps are not self-priming. For use only with nonflammable materials compatible with pump materials. N seals; stainless steel pumps have Viton seals and O-rings CAST-IRON HOUSING, BRONZE IMPELLER, 40° TO 180° F NPT PORT SIZE (IN.) HP PHASE ...
When to use a Positive Displacement Pump When to use a centrifugal or a Positive Displacement pump (“PD Pump”) is not always a clear choice. To make a good choice between these pump types it is important to understand that these two types of pumps behave very differently. Performance Flow rate versus pressure 250 Head Feet By looking at the performance chart to the right you can see just how different these pumps are. The centrifugal has varying flow depending on pressure or head, whereas the PD pump has more or less constant flow regardless of pressure. 200 150 Positive 100 Centrifugal 50 0 0 50 100 150 Capacity GPM Flow rate versus viscosity Percent Another major difference between the pump types is the effect viscosity has on the capacity of the pump. You will notice in the flow rate chart how the centrifugal pump Flow Rate loses flow as the viscosity goes up but the PD pump’s flow actually increases. This is because 100% the higher viscosity liquids fill the clearances of 90% the pump causing a higher volumetric 80% efficiency. Remember, this chart shows only the Positive 70% effect of viscosity on the pump flow; when there Centrifugal 60% is a viscosity change there is also greater line 50% loss in the system. This means you will also 40% have to calculate the change in pump flow from 0 100 200 300 400 500 the first chart for this pressure change. Viscosity cSt...
The Intuitive Centrifugal Pump Fast System Integration CP5 easily installs for immediate integration with the Sorin Group S5™ or C5® heart-lung machines. CP5 Main Features The Sorin Group CP5 is an all-in-one centrifugal pump with unique functions that combine maximum perfusion programming flexibility with safety: • Automatic ramp down and ramp up functionality may be individually selected for the following controls: –– Bubble –– Level –– Inlet Pressure –– Outlet Pressure –– Air Purge Control • Remote control of the Electronic Remote Controlled Arterial Clamp (ERC®) • Inlet pressure measurement or calculation • Outlet pressure management • Automatic controlled flow mode • Pulsatile flow mode The programmed functions, allocation of the sensors and accessories and all relevant numeric values (e.g. flow rate) and information are displayed on the control panel with icons and digital data fields. Connect the Drive Unit to the Control Panel… Intuitive Programming, Clear Perfusion Overview The touch screen gives a clear overview of the centrifugal pump activity, including allocated safety devices, alarm status and digital information read out for flow, RPM’s and pressures. Programming of the diverse CP5 parameters is as simple and intuitive as in the S5 and C5 Heart-Lung Machines.